Improving the Performance of a Wildlife Protection Cap by the Use of Salt Fog Testing

S. Sebo, R. Otte, J. Moore
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Abstract

Dielectric caps are used as wildlife protection measures on a new line of switching devices in order to satisfy service continuity needs and environmental requirements. Fog chamber tests were used to check and evaluate the performance of six different wildlife protection caps, positioned on their insulators, and outfitted with the appropriate connecting cables. The length of the test cycle was three weeks. During their performance evaluation, the energized insulators were exposed cyclically to salt fog. The energizing voltage was (27/1.73) = 15.6 kV(rms). Deionized water was used to produce the salt fog, with appropriate amount of salt added, to simulate a "heavy" contamination environment. The six insulators together with their caps were energized continuously for 24 hours a day, 7 days a week. The performance of two dielectric caps satisfied the expectations. The performance of dielectric caps made of various materials, and the design of the caps in terms of their shape and other aspects are described.
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利用盐雾测试提高野生动物保护帽的性能
为了满足业务连续性和环境要求,在一系列新的开关设备上采用了绝缘帽作为野生动物保护措施。雾室试验用于检查和评估六种不同的野生动物保护帽的性能,这些帽安装在绝缘体上,并配有适当的连接电缆。测试周期的长度为三周。在性能评估过程中,通电绝缘子循环暴露于盐雾中。通电电压为(27/1.73)= 15.6 kV(rms)。用去离子水产生盐雾,加入适量的盐,模拟“重”污染环境。6个绝缘子及其绝缘帽每周7天,每天24小时不间断通电。两种介质帽的性能均达到预期。介绍了各种材料制成的介电帽的性能,以及从形状等方面对介电帽的设计。
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